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An optimized double T-DNA binary vector system for improved production of marker-free transgenic tobacco plants

机译:一种优化的双T-DNA二元载体系统,用于改进无标转基因烟草植物的生产

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Objectives In the plant transformation process, marker genes play a vital role in identifying transformed cells from non-transformed cells. However, once transgenic plants have been obtained, the presence of marker genes may provoke public concern about environmental or biosafety issues. In our previous study, a double T-DNA vector system has been developed to obtain marker-free transgenic plants, but the T-DNA left border (LB) and right border (RB) of the vector showed an RB-LB-RB-LB pattern and led to high linkage integration between the selectable marker gene (SMG) and the gene of interest (GOI). To improve this double T-DNA vector system, we inverted the first T-DNA direction such that a LB-RB-RB-LB pattern resulted to avoid transcriptional read-through at the LB and the subsequent linkage transfer of the SMG and GOI. Results We separately inserted the green fluorescent protein (GFP) gene as the GOI and the neomycin phosphotransferase II (NPTII) gene as the SMG in both optimized and original vectors and carried out Agrobacterium-mediated tobacco transformation. Statistical analysis revealed that the linkage frequency was 25.6% in T-0 plants transformed with the optimized vector, which is a 42.1% decrease compared with that of the original vector (44.2%). The frequency of obtaining marker-free transgenic plants was 66.7% in T-1 plants transformed with the optimized vector, showing a 33.4% increase compared with that of the original vector (50.0%). Conclusion Our results demonstrate that the optimized double T-DNA binary vector system is a more effective, economical and time-saving approach for obtaining marker-free transgenic plants.
机译:在植物转化过程中的目的,标记基因在鉴定来自非转化细胞的转化细胞方面发挥着至关重要的作用。然而,一旦获得转基因植物,就会发现标记基因的存在可能会引发公众关注环境或生物安全问题。在我们之前的研究中,已经开发了一种双T-DNA载体系统以获得无标记的转基因植物,但载体的T-DNA左边界(LB)和右侧边界(RB)显示RB-LB-RB- LB图案并导致可选标记基因(SMG)与感兴趣的基因之间的高连锁积分(GOI)。为了改善这种双T-DNA载体系统,我们倒置第一T-DNA方向,使得LB-RB-RB-LB模式导致避免在LB的转录读数和SMG和GOI的随后的连杆转移。结果我们将绿色荧光蛋白(GFP)基因分别插入GOI和NeoMycinPhosphoter转移酶II(NPTII)基因作为优化和原始载体的SMG,并进行了农杆菌介导的烟草转化。统计学分析显示,用优化的载体转化的T-0植物中的连杆频率为25.6%,与原始载体的植物相比,T-0植物转化为42.1%(44.2%)。在用优化的载体转化的T-1植物中获得无标转基因植物的频率为66.7%,与原始载体(50.0%)相比,增加33.4%。结论我们的结果表明,优化的双T-DNA二元载体系统是一种更有效,经济和节省时间的方法,用于获得无标转基因植物。

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